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Long-term Analyses of Concrete-Filled Steel Tubular Arches Accounting for Interval Uncertainty

机译:钢管混凝土拱拱长期不确定性的长期分析

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摘要

Creep and shrinkage of the concrete core of a concrete-filled steel tubular (CFST) arch under sustained loading are inevitable, and cause a long-term change of the equilibrium configuration of the CFST arch. As the equilibrium configuration changes continuously, the long-term radial and axial displacements of the CFST arch, stress distributions as well as the internal forces in the steel tube and the concrete core change substantially with time. Creep and shrinkage of the concrete core are related to a number of its material parameters such as its creep coefficient, aging coefficient, and shrinkage strain. The values of these parameters differ significantly from one experiment to another, highlighting that these parameters experience certain amounts of uncertainty, which needs to be considered in the long-term analysis of a CFST arch. Although stochastic methods can be used to account for such uncertainties, their statistical variations are presumed being known, which have to be inferred from laboratory tests. However, the available data from creep and shrinkage tests of the concrete core of CFST members are quite limited and scattered, and so the stochastic method is of little use. This paper presents a long-term analysis of CFST circular arches by accounting for interval uncertainties in these parameters by interval modelling, and derives the upper and lower bounds for the long-term structural responses. It is shown that the uncertainties of creep and shrinkage of the concrete core have significant long-term effects on the structural behaviour of CFST arches.
机译:钢管混凝土(CFST)拱的混凝土芯在持续荷载下的蠕变和收缩是不可避免的,并且会导致CFST拱的平衡构型长期变化。当平衡构型连续变化时,CFST拱的长期径向和轴向位移,应力分布以及钢管和混凝土芯中的内力会随着时间而显着变化。混凝土芯的蠕变和收缩率与其许多材料参数有关,例如蠕变系数,老化系数和收缩应变。这些参数的值在一个实验与另一个实验之间存在显着差异,突出表明这些参数会遇到一定量的不确定性,在CFST拱的长期分析中需要考虑这些不确定性。尽管可以使用随机方法来解决此类不确定性,但假定它们的统计差异是已知的,必须从实验室测试中推断出来。然而,来自CFST构件混凝土芯的蠕变和收缩测试的可用数据非常有限且分散,因此随机方法几乎没有用。本文通过区间建模考虑了这些参数的区间不确定性,从而对CFST圆拱进行了长期分析,并得出了长期结构响应的上限和下限。结果表明,混凝土芯蠕变和收缩的不确定性对CFST拱的结构性能具有长期的显着影响。

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